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DESIGN AND EXPERIMENTAL ANALYSIS OF A BIOMEDICAL PROSTHETIC KNEE WITH MAGNETORHEOLOGICAL FLUID

机译:磁流变流体生物修复膝关节的设计与实验分析

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Current prosthetic legs rely on technology that is inefficient. Electric motors used today require high amounts of current to operate. Prostheses utilizing smart materials, including magnetorheological fluid (MRF), require less power to operate effectively. In this study, the MR fluid knee was designed for above the knee amputees. The design was in the family of MR fluid brake/clutch as it provides simple design and good MR fluid uniformity. However, this MR knee design is different from any existing MR brake, featuring a novel non-circular rotor. Three fourths of the rotor, considered circular, has the same radius, and the remaining quarter has a varying radius to provide a variable gap size between the rotor and stator. This feature allows the MR fluid to experience a stronger magnetic field as the knee rotates, resulting in a variable braking torque. At this stage of research, the first working prototype of the proposed MR fluid knee was built and tested to determine the braking torque profile. Corresponding theoretical models were also created. The calculated torque was used to predict the performance of the MRF knee. The experiments has been conducted to examine the MRF knee performance and to compare with the theoretical model. The knee was expected to use less power to operate and provided the necessary braking torque required by an average male human body. An improved design was planned for weight reduction and optimization to allow the commercialization of the MRF knee.
机译:当前的假肢依靠效率低下的技术。当今使用的电动机需要大量电流才能运行。利用包括磁流变液(MRF)在内的智能材料制作的假体需要较少的功率才能有效地进行操作。在这项研究中,MR液体膝盖是为膝盖截肢者以上而设计的。该设计属于MR流体制动器/离合器系列,因为它提供了简单的设计和良好的MR流体均匀性。但是,这种MR膝盖设计与现有的MR制动器不同,后者具有新颖的非圆形转子。转子的四分之三(视为圆形)具有相同的半径,其余的四分之一具有变化的半径,以在转子和定子之间提供可变的间隙尺寸。此功能使MR流体在膝盖旋转时能经受更强的磁场,从而产生可变的制动扭矩。在研究的这个阶段,所提出的MR流体膝盖的第一个工作原型已经构建并经过测试,以确定制动扭矩曲线。还创建了相应的理论模型。计算出的扭矩用于预测MRF膝关节的性能。已经进行了实验以检查MRF膝盖的性能并与理论模型进行比较。期望膝盖使用较少的动力进行操作,并提供普通男性人体所需的必要制动扭矩。为减轻重量和优化计划了改进的设计,以允许MRF膝盖的商业化。

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